...
首页> 外文期刊>Journal of Lightwave Technology >Elastic All-Optical Networks: A New Paradigm Enabled by the Physical Layer. How to Optimize Network Performances?
【24h】

Elastic All-Optical Networks: A New Paradigm Enabled by the Physical Layer. How to Optimize Network Performances?

机译:弹性全光网络:物理层启用的新范例。如何优化网络性能?

获取原文
获取原文并翻译 | 示例
           

摘要

A new era for optical networks has been started by the development of transceivers based on digital signal processing and operating multilevel modulation formats with coherent and equalized receivers, enabling uncompensated optical links and dynamic transparent wavelength routing in nodes. Connectivity matrices at the physical layer have changed from sparse and static to full and elastic. Therefore, to fully exploit network potentialities and to implement the elasticity paradigm requested by the forecasts of worldwide Internet traffic evolution, the orchestration of logical and physical layer has become a firm requirement. We propose the statistical network assessment process (SNAP) as a method to explore potentialities of physical layer independently of specific traffic allocation. We apply SNAP to a German and to a Pan-EU network topology, first deriving the average bit-rate per lightpath given an any-to-any connectivity matrix—a static metric—in order to compare merits of three typical fiber types and to evaluate benefits of time-division hybrid modulation formats. Then, assuming physical layer characteristics are set, we perform a SNAP investigation versus progressive network loading evaluating the blocking probability versus total allocated traffic—a dynamic metric—comparing merits of different size in traffic grooming operating together with multi- or fixed-rate transceivers. We also show how the progressive loading analysis can be used to address selected physical layer upgrades. As an example, we investigate possible upgrades to hybrid Raman/Erbium fiber amplification on selected links, then displaying quantitative benefits in terms of enabled excess traffic at a given blocking probability.
机译:通过开发基于数字信号处理的收发器并使用相干和均衡的接收器来运行多级调制格式,从而在节点中实现无补偿的光链路和动态透明波长路由,光网络的新时代已经开始。物理层的连接矩阵已从稀疏和静态更改为完全弹性。因此,为了充分利用网络潜力并实现全球互联网流量发展的预测所要求的弹性范式,逻辑层和物理层的编排已成为一个牢固的要求。我们提出统计网络评估过程(SNAP)作为一种方法来探索物理层的潜力,而与特定的流量分配无关。我们将SNAP应用于德国和泛欧网络拓扑,首先在给定任意对任意连通性矩阵(静态度量)的情况下,得出每条光路的平均比特率,以比较三种典型光纤类型的优缺点。评估时分混合调制格式的好处。然后,假设设置了物理层特性,我们将对SNAP调查与渐进式网络负载进行比较,以评估阻塞概率与总分配流量之间的动态关系(一种动态指标),比较在与多速率或固定速率收发器一起进行流量疏导时不同大小的优点。我们还将展示如何将渐进式负载分析用于解决选定的物理层升级。例如,我们研究了在选定的链路上拉曼/ E混合光纤放大的可能升级,然后以给定的阻塞概率在启用的过量流量方面显示了定量的好处。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号